English

Non-Reciprocal Current-Phase Relation and Superconducting Diode Effect in Topological-Insulator-Based Josephson Junctions

Superconductivity 2025-06-24 v1 Mesoscale and Nanoscale Physics

Abstract

Josephson junctions (JJ) are essential for superconducting quantum technologies and searches of self-conjugate quasiparticles, pivotal for fault-tolerant quantum computing. Measuring the current-phase relation (CPR) in JJ based on topological insulators (TI) can provide critical insights into unconventional phenomena in these systems, such as the presence of Majorana bound states (MBS) and the nature of non-reciprocal transport. However, reconstructing CPR as a function of magnetic field in such JJs has remained experimentally challenging. Here, we introduce a platform for precise CPR measurements in planar JJs composed of NbSe2_2 and few layer thick Bi2_2Se3_3 (TI) as a function of magnetic field. When a single flux quantum Φ0\Phi_\mathrm{0} threads the junction, we observe anomalous peak-dip-shaped CPR behaviour and non-reciprocal supercurrent flow. We demonstrate that these anomalies stem from the edge-amplified sloped supercurrent profile rather than MBS signatures often invoked to explain puzzles emerging near Φ0\Phi_\mathrm{0} in TI-based JJ. Furthermore, we show that such a supercurrent profile gives rise to a previously overlooked, robust and tunable Josephson diode effect. These findings establish field-dependent CPR measurements as a critical tool for exploring topological superconducting devices and offer new design principles for non-reciprocal superconducting electronics.

Keywords

Cite

@article{arxiv.2502.08527,
  title  = {Non-Reciprocal Current-Phase Relation and Superconducting Diode Effect in Topological-Insulator-Based Josephson Junctions},
  author = {A. Kudriashov and X. Zhou and R. A. Hovhannisyan and A. Frolov and L. Elesin and Y. Wang and E. V. Zharkova and T. Taniguchi and K. Watanabe and L. A. Yashina and Z. Liu and Xin Zhou and K. S. Novoselov and D. A. Bandurin},
  journal= {arXiv preprint arXiv:2502.08527},
  year   = {2025}
}

Comments

10 pages, 5 figures

R2 v1 2026-06-28T21:41:53.668Z